Using Magnetic Flux Conservation to Determine Heliosheath Speeds

Richardson, J. D. and Cummings, A. C. and Burlaga, L. F. and Giacalone, J. and Opher, M. and Stone, E. C. (2021) Using Magnetic Flux Conservation to Determine Heliosheath Speeds. The Astrophysical Journal Letters, 919 (2). L28. ISSN 2041-8205

[thumbnail of Richardson_2021_ApJL_919_L28.pdf] Text
Richardson_2021_ApJL_919_L28.pdf - Published Version

Download (1MB)

Abstract

The heliosheath (HSH) radial speeds at Voyager 2 (V2) derived from the plasma instrument (PLS) and from particle instruments using the Compton–Getting (CG) effect are different. At V2 the CG speeds are more variable than the plasma speeds and decrease about 2 yr before the heliopause. We use magnetic flux conservation to differentiate between these two speed profiles at V2, comparing the magnetic flux observed at 1 au and in the HSH. For V2 the PLS speed profile is significantly more consistent with magnetic flux conservation than the CG speeds. For Voyager 1 (V1), we present new VR derivations from the Cosmic Ray Subsystem (CRS) using the CG method that agree reasonably well with those previously obtained from the low energy charged particle (LECP) instrument. If we use the V2 PLS speed profile to calculate the magnetic flux at V1, we again find much better agreement than if we use the V1 CG speeds. These results suggest that the radial speeds derived from particle anisotropy observations in the HSH are not reliable.

Item Type: Article
Subjects: Universal Eprints > Physics and Astronomy
Depositing User: Managing Editor
Date Deposited: 08 May 2023 04:13
Last Modified: 15 Jan 2024 03:50
URI: http://journal.article2publish.com/id/eprint/1863

Actions (login required)

View Item
View Item